日本地球惑星科学連合2018年大会

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[EJ] Eveningポスター発表

セッション記号 P (宇宙惑星科学) » P-PS 惑星科学

[P-PS06] 太陽系物質進化

2018年5月23日(水) 17:15 〜 18:30 ポスター会場 (幕張メッセ国際展示場 7ホール)

コンビーナ:山口 亮(国立極地研究所)、藤谷 渉(茨城大学 理学部)、癸生川 陽子(横浜国立大学 大学院工学研究院、共同)、鹿山 雅裕(東北大学大学院理学研究科地学専攻)

[PPS06-P04] Tagish Lake隕石のコンドリュールサイズ分布とマトリックス中の層状ケイ酸塩鉱物の化学組成

*桐生 健斗1藤谷 渉1橋爪 光1 (1.茨城大学)

キーワード:Tagish Lake隕石、炭素質コンドライト、コンドリュール、層状ケイ酸塩、水質変成

Introduction
Tagish Lake is a carbonaceous chondrite with various characteristics indicative of aqueous alteration as CI, CM, and CR chondrites. However, the bulk oxygen isotopic composition and reflectance spectrum of Tagish Lake are different from any of existing chondrite groups. Thus, Tagish Lake is a unique chondrite which doesn’t belong to known chondrite groups.
The main purpose of this study is to characterize Tagish Lake by comparing with other chondrites. This study focuses on the size, the volume percentage, and the number density of chondrules, which have not yet been reported, and the chemical composition of matrix phyllosilicates. We used a scanning electron microscope (SEM) and energy dispersive x-ray spectroscopy (EDS) for mineralogical observations and chemical analyses.

Results and Discussion
The diameter, the volume percentage, and the number density of chondrules in Tagish Lake are 0.20±0.12 mm, 4.21 vol.%, 0.88 /mm², respectively. These values are relatively small among carbonaceous chondrites. Aqueous alteration may be a possible reason for the small volume percentage and number density of the Tagish Lake chondrules. However, the diameter of the Tagish Lake chondrules shows normal distribution in a logarithmic scale, and the diameter of about 90% of the Tagish Lake chondrules are within a factor of 2 of the mean value. These characteristics are common for other chondrites. These observations suggest that the small volume percentage and number density of the Tagish Lake chondrules are not due to aqueous alteration and that the parent body of Tagish Lake formed in an environment where fewer chondrules existed.
The chemical composition of matrix phyllosilicates in Tagish Lake is intermediate between saponite [(Ca/2, Na)0.3(Mg, Fe)3(Si, Al)4O10(OH)2・4H2O] and serpentine [(Mg, Fe)3(Si, Al)2O5(OH)4] solid solutions. The phyllosilicate composition of Tagish Lake is similar to that of CI chondrites, consistent with the conclusion by Zolensky et al. (2002). Furthermore, we found that Fe# (defined as Fe/(Fe+Mg) (mol/mol)) of the matrix phyllosilicates, which is an index of the extent of aqueous alteration, obtained in this study (Fe# = 0.28) is also similar to that measured by Zolensky et al. (2002) (Fe# ~ 0.3). Thus, the chemical composition of matrix phyllosilicates in Tagish Lake and the extent of aqueous alteration may be independent on lithologies.